谷歌浏览器插件
订阅小程序
在清言上使用

Electronic Structure of A Cu-Ii-Alkoxide Complex Modeling Intermediates in Copper-Catalyzed Alcohol Oxidations

Journal of the American Chemical Society(2016)

引用 12|浏览10
暂无评分
摘要
In the copper-catalyzed oxidation of alcohols to aldehydes, a Cu-II-alkoxide (Cu-II-OR) intermediate is believed to modulate the alpha C-H bond strength of the deprotonated substrate to facilitate the oxidation. As a structural model for these intermediates, we characterized the electronic structure of the stable compound Tp(tBu)Cu(II)(OCH2CF3) (Tp(tBu) = hydrotris(3-tert-butyl-pyrazolyl)borate) and investigated the influence of the trifluoroethoxide ligand on the electronic structure of the complex. The compound exhibits an electron paramagnetic resonance (EPR) spectrum with an unusually large g(zz) value of 2.44 and a small copper hyperfine coupling A(zz) of 40 X 10(-4) cm(-1) (120 MHz). Single-crystal electron nuclear double resonance (ENDOR) spectra show that the unpaired spin population is highly localized on the copper ion (approximate to 68%), with no more than 15% on the ethoxide oxygen. Electronic absorption and magnetic circular dichroism (MCD) spectra showweak ligand-field transitions between 5000 and 12 000 cm(-1) and an intense ethoxide-to-copper charge transfer (LMCT) transition at 24 000 cm(-1), resulting in the red color of this complex. Resonance Raman (rR) spectroscopy reveals a Cu-O stretch mode at 592 cm(-1). Quantum chemical calculations support the interpretation and assignment of the experimental data. Compared to known Cu-II-thiolate and Cu-II-alkylperoxo complexes from the literature, we found an increased a interaction in the Cu-II-OR bond that results in the spectroscopic features. These insights lay the basis for further elucidating the mechanism of copper catalyzed alcohol oxidations.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要